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通过调节亲水性单原子纳米碗中的 Fe(II)/Fe(III) 比例来改善磁共振成像和化学动力学治疗性能。

Improving Magnetic Resonance Imaging and Chemodynamic Therapy Properties via Tuning the Fe(II)/Fe(III) Ratio in Hydrophilic Single-Atom Nanobowls.

机构信息

State Key Laboratory of Chemical Resource Engineering, College of Chemistry, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

ACS Nano. 2024 Apr 9;18(14):10063-10073. doi: 10.1021/acsnano.3c12305. Epub 2024 Mar 27.

Abstract

We developed an intrinsic hydrophilic single-atom iron nanobowl (Fe-SANB) for magnetic resonance imaging (MRI)-guided tumor microenvironment-triggered cancer therapy. Benefiting from the sufficient exposure of Fe single atoms and the intrinsic hydrophilicity of the bowl-shaped structure, the Fe-SANBs exhibited a superior performance for -weighted MRI with an value of 11.48 mM s, which is 3-fold higher than that of the commercial Gd-DTPA ( = 3.72 mM s). After further coembedding Gd single atoms in the nanobowls, the value can be greatly improved to 19.54 mM s. In tumor microenvironment (TME), the Fe-SANBs can trigger pH-induced Fenton-like activity to generate highly toxic hydroxyl radicals for high-efficiency chemodynamic therapy (CDT). Both the MRI and CDT efficiency of these nanobowls can be optimized by tuning the ratio of Fe(II)/Fe(III) in the Fe-SANBs via controlling the calcination temperature. Furthermore, the generation of •OH at the tumor site can be accelerated via the photothermal effect of Fe-SANBs, thus promoting CDT efficacy. Both and results confirmed that our nanoplatform exhibited high -weighted MRI contrast, robust biocompatibility, and satisfactory tumor treatment, providing a potential nanoplatform for MRI-guided TME-triggered precise cancer therapy.

摘要

我们开发了一种内在亲水性单原子铁纳米碗(Fe-SANB),用于磁共振成像(MRI)引导的肿瘤微环境触发的癌症治疗。受益于 Fe 单原子的充分暴露和碗状结构的固有亲水性,Fe-SANB 表现出优异的 MRI 性能,T2 弛豫率为 11.48 mM s-1,是商业 Gd-DTPA(T2 弛豫率为 3.72 mM s-1)的 3 倍。进一步在纳米碗中共同嵌入 Gd 单原子后,T2 弛豫率可以大大提高到 19.54 mM s-1。在肿瘤微环境(TME)中,Fe-SANB 可以触发 pH 诱导的类芬顿活性,产生高效的化学动力学治疗(CDT)所需的高毒性羟基自由基。通过控制煅烧温度,调节 Fe-SANB 中 Fe(II)/Fe(III)的比例,可以优化这些纳米碗的 MRI 和 CDT 效率。此外,通过 Fe-SANB 的光热效应,可以加速肿瘤部位•OH 的生成,从而提高 CDT 效果。T2 和 T1ρ弛豫率结果均证实,我们的纳米平台具有高 T2 加权 MRI 对比、强生物相容性和令人满意的肿瘤治疗效果,为 MRI 引导的 TME 触发的精确癌症治疗提供了一种潜在的纳米平台。

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